Which of the following statements are true? Choose all that apply. The total current coming into a junction is always less than the total current leaving the junction. In a circuit, the sum of the voltages around a loop must be greater than zero. For resistors in series, Req is equal to each of the individual resistances. For resistors in parallel, Reg is equal to each of the individual resistances. For the charging RC-circuit, when t = r the voltage across the capacitor is approximately equal to 0.368 times the battery voltage. O For the discharging RC-circuit, when t= r the current through the resistor is approximately equal to 0.368 times the initial current.

College Physics
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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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Which of the following statements are true? Choose all that apply.
The total current coming into a junction is always less than the total current leaving the junction.
In a circuit, the sum of the voltages around a loop must be greater than zero.
For resistors in series, Req is equal to each of the individual resistances.
For resistors in parallel, Req is equal to each of the individual resistances.
For the charging RC-circuit, when t = r the voltage across the capacitor is approximately equal to 0.368 times the battery voltage.
For the discharging RC-circuit, when t = r the current through the resistor is approximately equal to 0.368 times the initial current.
Transcribed Image Text:Which of the following statements are true? Choose all that apply. The total current coming into a junction is always less than the total current leaving the junction. In a circuit, the sum of the voltages around a loop must be greater than zero. For resistors in series, Req is equal to each of the individual resistances. For resistors in parallel, Req is equal to each of the individual resistances. For the charging RC-circuit, when t = r the voltage across the capacitor is approximately equal to 0.368 times the battery voltage. For the discharging RC-circuit, when t = r the current through the resistor is approximately equal to 0.368 times the initial current.
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